Department of Life Sciences, University of Trieste, via L. Giorgieri, 1, Trieste, 34127, Italy.
Department of Chemical and Pharmaceutical Sciences, University of Trieste, via L. Giorgieri, 1, Trieste, 34127, Italy.
Macromol Biosci. 2024 Mar;24(3):e2300236. doi: 10.1002/mabi.202300236. Epub 2023 Sep 24.
Elastin-like polypeptides are biotechnological protein and peptide carriers that offer a vast scope of applicability. This work aims to build a model for the expression of antimicrobial peptides (AMPs) by genetically engineering the Human Elastin-like Polypeptide platform developed in the lab. The well-characterized AMP indolicidin is selected as an example of an antimicrobial domain for the recombinant fusion at the C-terminus of the carrier. The fusion construct has been designed to allow the release of the antimicrobial domain. The expression product has been purified and its physicochemical and antimicrobial properties has been characterized. Taking advantage of the self-assembling and matrix-forming properties of the recombinant biopolymer, the materials that are obtained have been evaluated for antimicrobial activity toward bacterial-strain models. This approach represents a cost-effective strategy for the production of smart components and materials endowed with antimicrobial capacity triggered by external stimuli.
弹性蛋白样多肽是生物技术的蛋白质和肽载体,具有广泛的适用性。本工作旨在通过基因工程构建人弹性蛋白样多肽平台表达抗菌肽(AMPs)的模型。选择经过充分表征的抗菌肽 indolicidin 作为抗菌结构域,在载体的 C 末端进行重组融合。融合构建体的设计允许释放抗菌结构域。已对表达产物进行了纯化,并对其物理化学和抗菌特性进行了表征。利用重组生物聚合物的自组装和形成基质的特性,对获得的材料进行了评估,以研究其对细菌菌株模型的抗菌活性。这种方法代表了一种具有成本效益的策略,可用于生产具有外部刺激触发的抗菌能力的智能组件和材料。